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of various cell lines and primary cells; (iii) cell-based assays including cytotoxicity, cell viability, and cell proliferation assays; (iv) immunofluorescence imaging using confocal microscopy and single
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maintenance and repairs; chemical analysis methods; characterization techniques like mass spectroscopy, light microscopy (having SEM & XRD skills is a plus); safety issues in working in a hood with solid
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(https://somexlab.github.io/) led by Prof. Roberto Cerbino. The SoMeX Lab investigates the physical principles governing the behavior of soft and biological systems, focusing on both equilibrium and non
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, histology, immunohistochemistry, and microscopy. May assist with mammalian cell cultures, including neuronal and iPSC-derived cell models. May assist with rodent colony maintenance, genotyping, tissue
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, immunohistochemistry, confocal microscopy, tissue sectioning, PCR/RT-PCR, data collection, data management, and analysis using mouse and human spinal cord/DRG tissue where appropriate. Prepare manuscripts, abstracts
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University of North Carolina Wilmington | Wilmington, North Carolina | United States | about 2 months ago
related field) Previous experience performing office-based procedures and/or microscopy (i.e., wet preps) Previous experience working with patients 17-30 years old Required Certifications or Licensures
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development of advanced characterization methodologies for soft matter, colloids, and bio–nano interfaces, including atomic force microscopy (AFM), scattering techniques, spectroscopy, acoustic sensing, and
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assays, (iii) development of strategies to mechanically couple molecular motors, (iv) dynamic acquisition of motor-driven movement by high-resolution fluorescence microscopy and/or magnetic/optical
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our research program, see https://meyer-lab-cshl.github.io/ Position Responsibilities The successful candidate will study tolerance induction and generation of diversity in the immune system as part of
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genetics, genome engineering, advanced microscopy, quantitative image analysis, single-cell and spatial multi-omics, biomaterials, and engineered in vitro model systems to investigate how the aging